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用于Kras基因超灵敏检测的环回滚环扩增技术

Loopback rolling circle amplification for ultrasensitive detection of Kras gene.

作者信息

Xu Huo, Wu Dong, Jiang Yifan, Zhang Rongbo, Wu Qingzheng, Liu Yiyun, Li Feng, Wu Zai-Sheng

机构信息

Cancer Metastasis Alert and Prevention Center, Pharmaceutical Photocatalysis of State Key Laboratory of Photocatalysis on Energy and Environment, and Fujian Provincial Key Laboratory of Cancer Metastasis Chemoprevention and Chemotherapy, College of Chemistry, Fuzhou University, Fuzhou 350002, China.

Cancer Metastasis Alert and Prevention Center, Pharmaceutical Photocatalysis of State Key Laboratory of Photocatalysis on Energy and Environment, and Fujian Provincial Key Laboratory of Cancer Metastasis Chemoprevention and Chemotherapy, College of Chemistry, Fuzhou University, Fuzhou 350002, China; Key laboratory of watershed science and health of Zhejiang Province, Institute of Functional Nucleic Acids and Personalized Cancer Theranostics, Key Laboratory of Laboratory Medicine, Ministry of Education of China, and Zhejiang Provincial Key Laboratory of Medical Genetics, School of Laboratory Medicine and Life Sciences, Wenzhou Medical University, Wenzhou 325035, China.

出版信息

Talanta. 2017 Mar 1;164:511-517. doi: 10.1016/j.talanta.2016.12.017. Epub 2016 Dec 7.

Abstract

Mutations in Kras gene may be used as a diagnostic marker and a target for treatment of the broad spectrum of human cancers. In this study, we developed a new class of amplification assay, double-hairpin molecular beacon (DHMB)-based cascade rolling circle amplification (RCA), for ultrasensitive and selective detection of Kras gene in a homogenous solution. Specifically, target DNA can hybridize with DHMB and activate cyclical target strand-displacement polymerization (CTDP) and nicking-mediated strand-displacement polymerization (NMDP). The resulting nicked/displaced fragments substantially outnumber target DNA and cause the cascade rolling circle amplification (C-RCA) and nicked fragment-induced strand-displacement polymerization (NFDP). Even if four amplification processes are designed, only DHMB, padlock probe and polymerization primer are involved. Under optimized conditions, this screening system exhibits a linear range of 5 orders of magnitude (from 100fM to 20nM), and the detection limit is down to 16fM. Moreover, the developed biosensing system offers a high assay specificity for perfectly matched target DNA, and the measured data from practical samples demonstrated the potential application in the cancer diagnoses. As a proof-of-concept genetic assay, the novel signaling strategy, as well as desirable analytical capability, would significantly benefit the development of versatile amplification gene profiling platforms, revealing great promise in biological studies and medical diagnostics.

摘要

Kras基因的突变可作为诊断标志物及多种人类癌症的治疗靶点。在本研究中,我们开发了一类新型扩增检测方法,即基于双发夹分子信标(DHMB)的级联滚环扩增(RCA),用于在均相溶液中对Kras基因进行超灵敏和选择性检测。具体而言,靶DNA可与DHMB杂交并激活循环靶链置换聚合反应(CTDP)和切口介导的链置换聚合反应(NMDP)。产生的切口/置换片段数量远多于靶DNA,并引发级联滚环扩增(C-RCA)和切口片段诱导的链置换聚合反应(NFDP)。即便设计了四个扩增过程,也仅涉及DHMB、锁式探针和聚合引物。在优化条件下,该筛选系统的线性范围为5个数量级(从100fM至20nM),检测限低至16fM。此外,所开发的生物传感系统对完全匹配的靶DNA具有高度检测特异性,实际样品的测量数据证明了其在癌症诊断中的潜在应用价值。作为一种概念验证基因检测方法,这种新型信号策略以及理想的分析能力将极大地推动通用扩增基因分析平台的发展,在生物学研究和医学诊断中展现出巨大潜力。

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